Biometric Electromagnetic Scan Skin Bodysuit
Abstract
A wearable technology, referred to herein as biometric bodysuit, which integrates biometric sensors, electromagnetic stimulation, and wireless control modules having the capacity to communicate with an interactive user interface. The body is comprised of at least one segment covering at least a portion of a body of a wearer. The segments include an arm covering, a leg covering, a torso covering, footwear, handwear, headwear, and any combination thereof. The segments include a series of control modules that relay real-time biometric data to a main control module, wherein the data is then relayed to a server and a user interface. The user interface permits wearers of the bodysuit and healthcare professionals to adjust the functionality of the bodysuit in accordance to what is the necessary therapy required by the wearer.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A bodysuit comprising:
at least one segment wherein said segment covers at least a portion of a body of a wearer; the segment further comprising at least one main central control module wherein said main central control module is coupled to the segment of the bodysuit; the segment further comprising at least one hardware device wherein said hardware device is an input/output device such as a biometric sensor, an accelerometer, a gyroscope, and a wireless transmitter; the hardware device coupled to the segment of the bodysuit, wherein said hardware device has the capability to wirelessly transmit data between said hardware device and the control module.
2 . The bodysuit as claimed in claim 1 wherein the at least one segment comprises at least one of the following including:
an arm sleeve comprising a first opening proximate a forearm of a wearer and a second opening proximate a shoulder of the wearer;
a leg sleeve comprising a first opening proximate a lower portion of a leg of the wearer and a second opening proximate an upper portion of the leg of the wearer wherein said leg sleeve covers at least a portion of the leg of the wearer;
a torso cover comprising a front facing side, a rear facing side, and an opening proximate a neck of the wearer wherein said torso cover covers at least a portion of a torso of the wearer;
a helmet wherein said helmet covers at least a portion of a head of the wearer;
a footwear wherein said footwear covers at least a portion of a foot of the wearer; and
a glove covering at least a portion of a hand of the wearer;
the arm sleeve, the leg sleeve, the torso cover, the helmet, the footwear, and the glove comprising a modular connection.
3 . The bodysuit as claimed in claim 2 wherein said bodysuit is composed of a material comprising a plurality of layers;
a first, inwardly facing, layer composed of a nylon tricot material, wherein said layer is proximate the body of the wearer;
a second layer composed of spandex, adjacent to the first layer;
a third layer composed of urethane coated nylon adjacent to the second layer, wherein said third layer is able to expand and contract through a pressurization function of the bodysuit;
a fourth layer, wherein said layer is an outwardly facing layer, composed of a weaved material comprising Kevlar and graphene; and
a plurality of carbon nanotubes suspended in polyethylene glycol, wherein said carbon nanotubes are interposed within the plurality of layers.
4 . The bodysuit as claimed in claim 2 , wherein at least one of the following segments including the front facing side of the torso cover, the rear facing side of the torso cover, and a portion of the bodysuit proximate a waist of the wearer comprise a main control module coupled to the segment of the bodysuit; and
the bodysuit further comprising a plurality of primary central control modules wherein said primary central control modules communicate via wireless transmission to the main central control modules the primary central control modules being coupled to the segments of the suit.
5 . The bodysuit as claimed in claim 4 , wherein the hardware further comprises a processor, a memory storage device, and a power supply.
6 . The bodysuit as claimed in claim 5 further comprising an interactive user interface that allows wearers to interact wirelessly to a network provided by an external server via a wearable device and a mobile phone comprising an application.
7 . The bodysuit as claimed in claim 4 further comprising at least one primary reserve control module.
8 . The bodysuit as claimed in claim 5 wherein the hardware devices and the IO devices provide data to the main central control module to facilitate a plurality of functions.
9 . The bodysuit as claimed in claim 8 wherein the plurality of functions comprise:
a first function wherein bodysuit performs a collection of biometric data of the wearer;
a second function wherein the bodysuit facilitates the uptake of nanoparticles throughout the body of the wearer;
a third function wherein the temperature of the body suit increases providing a heat therapy to the wearer;
a fourth function wherein the third layer of the multi-layered material expands thus restricting a flow of blood, and thus providing a cooling sensation, to a portion of the body of the wearer to simulate cold therapy;
a fifth function wherein the third layer of the multi-layered material expands thus compressing a portion of the body of the wearer, providing a compression therapy to the wearer;
a sixth function wherein the third layer of the multi-layered material contracts thus decompressing a portion of the body of the wearer;
a seventh function wherein the biometric sensors detect and measure electrical signals from nerves throughout the body, the processor and wireless transmitter communicate the data acquired from the biometric sensors to the primary central control module, the primary central control module transmitting the data to the main central control module, and the main central control module transmitting the data to the user interface wherein the user interface compares electrical signals throughout the body and diagnoses nerve imbalances;
an eighth function wherein the bodysuit facilitates the enhancement, repair, recovery, and rehabilitation of a muscle of a wearer;
a ninth function wherein electrical impulses are delivered through the bodysuit to increase circulation, increase mobility, assist in healing, and facilitate recovery; and
a tenth function wherein biometric reads are taken by the biometric sensors to detect and facilitate the uptake of pharmaceutical products.
10 . The bodysuit as claimed in claim 9 wherein the first function comprises the steps of:
perform biometric reads of electrical impulses, oxygen saturation, blood pressure, and systematic imbalances;
monitor a plurality of biometric data over an interval of time;
record the biometric data; and
compile the data and information acquired by the biometric sensors.
11 . The bodysuit as claimed in claim 9 wherein the second function comprises the steps of:
nanomino enzymatically encapsulated liquid amino acids are ingested by wearer;
release of nanomino enzymatically liquid amino acids are delayed using a prolonged release capsule;
amino acids are directed to a target area; and
bodysuit stimulates a portion of the body proximate the target area of the body of the wearer.
12 . A bodysuit comprising:
at least one segment wherein said segment covers at least a portion of a body of a wearer; the segment further comprising at least one main central control module and at least one primary central control module wherein the main central control module and the primary central control module are coupled to the segment of the bodysuit; the at least one segment comprises at least one of the following including:
an arm sleeve comprising a first opening proximate a forearm of a wearer and a second opening proximate a shoulder of the wearer;
a leg sleeve comprising a first opening proximate a lower portion of a leg of the wearer and a second opening proximate an upper portion of the leg of the wearer wherein said leg sleeve covers at least a portion of the leg of the wearer;
a torso cover comprising a front facing side, a rear facing side, and an opening proximate a neck of the wearer wherein said torso cover covers at least a portion of a torso of the wearer;
a helmet wherein said helmet covers at least a portion of a head of the wearer;
a footwear wherein said footwear covers at least a portion of a foot of the wearer; and
a glove covering at least a portion of a hand of the wearer;
the arm sleeve, the leg sleeve, the torso cover, the helmet, the footwear, and the glove comprising a modular connection.
13 . The bodysuit as claimed in claim 12 wherein said bodysuit is composed of a material comprising a plurality of layers;
a first, inwardly facing, layer composed of a nylon tricot material, wherein said layer is proximate the body of the wearer;
a second layer composed of spandex, adjacent to the first layer;
a third layer composed of urethane coated nylon adjacent to the second layer, wherein said third layer is able to expand and contract through a pressurization function of the bodysuit;
a fourth layer, wherein said layer is an outwardly facing layer, composed of a weaved material comprising Kevlar and graphene; and
a plurality of carbon nanotubes suspended in polyethylene glycol, wherein said carbon nanotubes are interposed within the plurality of layers.
14 . The bodysuit as claimed in claim 13 wherein the at least one main central control module is coupled to at least one of the areas of the segments selected from a group consisting of a front facing portion of the torso cover of the bodysuit and a rear facing portion of the torso cover of the bodysuit;
the at least one main central control module comprising:
a processor;
a memory storage device;
a power supply; and
at least one input/output (IO) device wherein said device comprises a biometric sensor, an accelerometer, a gyroscope, and a wireless transmitter.
15 . The bodysuit as claimed in claim 14 further comprising an interactive user interface that allows wearers to interact wirelessly to a network provided by an external server via a wearable device and a mobile phone comprising an application.
16 . The bodysuit as claimed in claim 12 further comprising at least one primary reserve control module.
17 . A bodysuit composed of a multi-layered material comprising:
at least one segment wherein said segment covers at least a portion of a body of a wearer; the segment further comprising at least one main central control module and at least one primary central control module wherein the main central control module and the primary central control module are coupled to the segment of the bodysuit; the at least one segment comprises at least one of the following including:
an arm sleeve comprising a first opening proximate a forearm of a wearer and a second opening proximate a shoulder of the wearer;
a leg sleeve comprising a first opening proximate a lower portion of a leg of the wearer and a second opening proximate an upper portion of the leg of the wearer wherein said leg sleeve covers at least a portion of the leg of the wearer;
a torso cover comprising a front facing side, a rear facing side, and an opening proximate a neck of the wearer wherein said torso cover covers at least a portion of a torso of the wearer;
a helmet wherein said helmet covers at least a portion of a head of the wearer;
a footwear wherein said footwear covers at least a portion of a foot of the wearer; and
a glove covering at least a portion of a hand of the wearer;
the arm sleeve, the leg sleeve, the torso cover, the helmet, the footwear, and the glove comprising a modular connection
the segment further comprising at least one hardware device wherein said hardware device is an input/output device such as a biometric sensor, an accelerometer, a gyroscope, and a wireless transmitter; the hardware device coupled to the segment of the bodysuit, wherein said hardware device has the capability to wirelessly transmit data between said hardware device, the primary central control module, and the main central control module; the material comprising a plurality of layers wherein the plurality of layers comprises: a first, inwardly facing, layer composed of a nylon tricot material, wherein said layer is proximate the body of the wearer; a second layer composed of spandex, adjacent to the first layer; a third layer composed of urethane coated nylon adjacent to the second layer, wherein said third layer is able to expand and contract through a pressurization function of the bodysuit; a fourth layer, wherein said layer is an outwardly facing layer, composed of a weaved material comprising Kevlar and graphene; and a plurality of carbon nanotubes suspended in polyethylene glycol, wherein said carbon nanotubes are interposed within the plurality of layers.
18 . The bodysuit as claimed in claim 17 further comprising an interactive user interface that allows wearers to interact wirelessly to a network provided by an external server via a wearable device and a mobile phone comprising an application.
19 . The bodysuit as claimed in claim 18 further comprising at least one primary reserve control module.
20 . The bodysuit as claimed in claim 19 wherein the hardware devices and the IO devices provide data to the main central control module to facilitate a plurality of functions including a function wherein sound waves are used to communicate information.Join the waitlist — get patent alerts
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